|  Help  |  About  |  Contact Us

Publication : Tumoural activation of TLR3-SLIT2 axis in endothelium drives metastasis.

First Author  Tavora B Year  2020
Journal  Nature Volume  586
Issue  7828 Pages  299-304
PubMed ID  32999457 Mgi Jnum  J:297392
Mgi Id  MGI:6472573 Doi  10.1038/s41586-020-2774-y
Citation  Tavora B, et al. (2020) Tumoural activation of TLR3-SLIT2 axis in endothelium drives metastasis. Nature 586(7828):299-304
abstractText  Blood vessels support tumours by providing nutrients and oxygen, while also acting as conduits for the dissemination of cancer(1). Here we use mouse models of breast and lung cancer to investigate whether endothelial cells also have active 'instructive' roles in the dissemination of cancer. We purified genetically tagged endothelial ribosomes and their associated transcripts from highly and poorly metastatic tumours. Deep sequencing revealed that metastatic tumours induced expression of the axon-guidance gene Slit2 in endothelium, establishing differential expression between the endothelial (high Slit2 expression) and tumoural (low Slit2 expression) compartments. Endothelial-derived SLIT2 protein and its receptor ROBO1 promoted the migration of cancer cells towards endothelial cells and intravasation. Deleting endothelial Slit2 suppressed metastatic dissemination in mouse models of breast and lung cancer. Conversely, deletion of tumoural Slit2 enhanced metastatic progression. We identified double-stranded RNA derived from tumour cells as an upstream signal that induces expression of endothelial SLIT2 by acting on the RNA-sensing receptor TLR3. Accordingly, a set of endogenous retroviral element RNAs were upregulated in metastatic cells and detected extracellularly. Thus, cancer cells co-opt innate RNA sensing to induce a chemotactic signalling pathway in endothelium that drives intravasation and metastasis. These findings reveal that endothelial cells have a direct instructive role in driving metastatic dissemination, and demonstrate that a single gene (Slit2) can promote or suppress cancer progression depending on its cellular source.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

16 Bio Entities

Trail: Publication

0 Expression